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CpG-DNA Activates In Vivo T Cell Epitope Presenting Dendritic Cells to Trigger Protective Antiviral Cytotoxic T Cell Responses

机译:CpG-DNA激活体内T细胞表位,呈递树突状细胞以触发保护性抗病毒细胞毒性T细胞反应。

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MHC class I-restricted T cell epitopes lack immunogenicity unless aided by IFA or CFA. In an attempt to circumvent the known inflammatory side effects of IFA and CFA, we analyzed the ability of immunostimulatory CpG-DNA to act as an adjuvant for MHC class I-restricted peptide epitopes. Using the immunodominant CD8 T cell epitopes, SIINFEKL from OVA or KAVYNFATM (gp33) from lymphocytic choriomeningitis virus glycoprotein, we observed that CpG-DNA conveyed immunogenicity to these epitopes leading to primary induction of peptide-specific CTL. Furthermore, vaccination with the lymphocytic choriomeningitis virus gp33 peptide triggered not only CTL but also protective antiviral defense. We also showed that MHC class I-restricted peptides are constitutively presented by immature dendritic cells (DC) within the draining lymph nodes but failed to induce CTL responses. The use of CpG-DNA as an adjuvant, however, initiated peptide presenting immature DC progression to professional licensed APC. Activated DC induced cytolytic CD8 T cells in wild-type mice and also mice deficient of Th cells or CD40 ligand. CpG-DNA thus incites CTL responses toward MHC class I-restricted T cell epitopes in a Th cell-independent manner. Overall, these results provide new insights into CpG-DNA-mediated adjuvanticity and may influence future vaccination strategies for infectious and perhaps tumor diseases.
机译:除非得到IFA或CFA的帮助,否则MHC I类限制性T细胞表位缺乏免疫原性。为了避免已知的IFA和CFA的炎症副作用,我们分析了免疫刺激性CpG-DNA充当MHC I类限制性肽表位佐剂的能力。使用免疫显性的CD8 T细胞表位,OVA的SIINFEKL或淋巴细胞性脉络膜脑膜炎病毒糖蛋白的KAVYNFATM(gp33),我们观察到CpG-DNA对这些表位具有免疫原性,从而导致了肽特异性CTL的初步诱导。此外,用淋巴细胞性脉络膜脑膜炎病毒gp33肽接种疫苗不仅触发了CTL,还触发了保护性抗病毒防御。我们还显示,MHC I类限制性肽是由引流淋巴结内的未成熟树突状细胞(DC)组成性呈递的,但未能诱导CTL反应。但是,使用CpG-DNA作为佐剂会引发呈现未成熟DC进展为专业许可APC的肽。活化的DC诱导了野生型小鼠以及缺乏Th细胞或CD40配体的小鼠的溶细胞CD8 T细胞。因此,CpG-DNA以Th细胞非依赖性的方式激发了针对MHC I类限制性T细胞表位的CTL反应。总体而言,这些结果为CpG-DNA介导的佐剂性提供了新的见解,并可能影响传染病和可能的肿瘤疾病的未来接种策略。

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